CN108897597B - Method and device for guiding configuration of live broadcast template - Google Patents

Method and device for guiding configuration of live broadcast template Download PDF

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CN108897597B
CN108897597B CN201810802831.9A CN201810802831A CN108897597B CN 108897597 B CN108897597 B CN 108897597B CN 201810802831 A CN201810802831 A CN 201810802831A CN 108897597 B CN108897597 B CN 108897597B
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live broadcast
component
target
target live
live
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CN108897597A (en
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曾衍
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Guangzhou Cubesili Information Technology Co Ltd
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Guangzhou Cubesili Information Technology Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces

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  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)

Abstract

The disclosure relates to a method and a device for guiding configuration of a live broadcast template, and belongs to the technical field of internet. The method comprises the following steps: when a configuration instruction of a live broadcast template used in a live broadcast process of a target live broadcast room is detected, displaying a plurality of live broadcast components; determining the type of live broadcast content of a target live broadcast room; determining a target live broadcast component configuration condition corresponding to the live broadcast content type of the target live broadcast room according to the corresponding relation between the preset live broadcast content type and the live broadcast component configuration condition; when a selection instruction of the target live broadcast component is detected, if the target live broadcast component does not meet the configuration condition of the target live broadcast component, first prompt information is sent out. By adopting the method and the device, the conflict between the target live broadcast component added at will and other display contents can be avoided.

Description

Method and device for guiding configuration of live broadcast template
Technical Field
The present disclosure relates to the field of internet technologies, and in particular, to a method and an apparatus for guiding configuration of a live template.
Background
Before the live broadcast starts, the anchor or the operator can use a default live broadcast template provided by the live broadcast platform as a live broadcast template used in the live broadcast process. The default live broadcast template comprises a plurality of live broadcast modules, and each live broadcast module has different functions. For example, the default live broadcast template includes an approach special effect animation module for playing special effect animation when a viewer with a special identity level enters a live broadcast room, and when the viewer with the special identity level enters the live broadcast room, the approach special effect animation module plays special effect animation corresponding to the special identity level of the viewer.
Each anchor or each operator can not well meet the personalized setting requirements of the anchor or the operator by using the same default live broadcast template.
Disclosure of Invention
In order to overcome the problems in the related art, the present disclosure provides the following technical solutions:
according to a first aspect of embodiments of the present disclosure, there is provided a method of directing configuration of a live template, the method comprising:
when a configuration instruction of a live broadcast template used in a live broadcast process of a target live broadcast room is detected, displaying a plurality of live broadcast components;
determining the type of live content of the target live broadcast room;
determining a target live broadcast component configuration condition corresponding to the live broadcast content type of the target live broadcast room according to a preset corresponding relation between the live broadcast content type and the live broadcast component configuration condition;
when a selection instruction of a target live broadcast component is detected, if the target live broadcast component does not meet the configuration condition of the target live broadcast component, first prompt information is sent, wherein the first prompt information is used for indicating that the type of live broadcast contents of the target live broadcast component and the target live broadcast room are not matched.
Optionally, the method further comprises:
and if the target live broadcast assembly meets the configuration condition of the target live broadcast assembly and the associated live broadcast assembly associated with the target live broadcast assembly is found in a pre-stored list of associated live broadcast assemblies, sending second prompt information, wherein the second prompt information is used for prompting that the associated live broadcast assembly is added into the live broadcast template.
Optionally, the method further comprises:
if the target live broadcast component meets the configuration condition of the target live broadcast component, determining a target placement position condition corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the placement position condition;
and sending third prompt information, wherein the third prompt information is used for prompting that the target live broadcast assembly is added to a position, meeting the target placement position condition, in the live broadcast template.
Optionally, the method further comprises:
if the target live broadcast component meets the configuration condition of the target live broadcast component, determining a target display hierarchy corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the display hierarchy;
and sending fourth prompt information, wherein the fourth prompt information is used for prompting that the display hierarchy of the target live broadcast component in a display interface is set as the target display hierarchy.
Optionally, the method further comprises:
if the target live broadcast component meets the target live broadcast component configuration condition, determining the component type of the live broadcast component added in the live broadcast template;
and if the component type of the target live component is consistent with the component type of the added live component, sending fifth prompt information, wherein the fifth prompt information is used for prompting to replace the target live component.
According to a second aspect of the embodiments of the present disclosure, there is provided an apparatus for directing configuration of a live template, the apparatus comprising:
the display module is used for displaying a plurality of live broadcast components when a configuration instruction of a live broadcast template used in a live broadcast process of a target live broadcast room is detected;
the first determining module is used for determining the type of the live content of the target live broadcast room;
the second determining module is used for determining a target live broadcast component configuration condition corresponding to the live broadcast content type of the target live broadcast room according to the corresponding relation between the preset live broadcast content type and the live broadcast component configuration condition;
the live broadcast control device comprises a first prompt module and a second prompt module, wherein the first prompt module is used for sending first prompt information if a target live broadcast component does not meet the configuration condition of the target live broadcast component when a selection instruction of the target live broadcast component is detected, and the first prompt information is used for indicating that the type of live broadcast contents of the target live broadcast component and the target live broadcast room is not matched.
Optionally, the apparatus further comprises:
and the second prompting module is used for sending second prompting information when the target live broadcast assembly meets the configuration condition of the target live broadcast assembly and the associated live broadcast assembly associated with the target live broadcast assembly is found in a pre-stored list of associated live broadcast assemblies, wherein the second prompting information is used for prompting that the associated live broadcast assembly is added into the live broadcast template.
Optionally, the apparatus further comprises:
the third determining module is used for determining a target placement position condition corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the placement position condition when the target live broadcast component meets the target live broadcast component configuration condition;
and the third prompt information is used for prompting that the target live broadcast assembly is added to a position, meeting the target placement position condition, in the live broadcast template.
Optionally, the apparatus further comprises:
the fourth determining module is used for determining a target display hierarchy corresponding to the target live broadcast component according to the pre-stored corresponding relation between the live broadcast component and the display hierarchy when the target live broadcast component meets the configuration condition of the target live broadcast component;
and the fourth prompt module is used for sending fourth prompt information, wherein the fourth prompt information is used for prompting that the display hierarchy of the target live broadcast component in a display interface is set as the target display hierarchy.
Optionally, the apparatus further comprises:
a fifth determining module, configured to determine, when the target live component meets the target live component configuration condition, a component type of a live component that has been added to the live template;
and the fifth prompt module is used for sending fifth prompt information when the component type of the target live component is consistent with the component type of the added live component, wherein the fifth prompt information is used for prompting the target live component to be replaced.
According to a third aspect of the embodiments of the present disclosure, there is provided a terminal comprising a processor, a communication interface, a memory, and a communication bus, wherein:
the processor, the communication interface and the memory complete mutual communication through the communication bus;
the memory is used for storing a computer program;
the processor is used for executing the program stored in the memory so as to realize the method for guiding the configuration of the live broadcast template.
According to a fourth aspect of the embodiments of the present disclosure, a computer-readable storage medium is provided, in which a computer program is stored, and the computer program, when executed by a processor, implements the above method for directing configuration of a live template.
The technical scheme provided by the embodiment of the disclosure can have the following beneficial effects:
by the method provided by the embodiment of the disclosure, operators of the anchor or the live broadcast room can configure the live broadcast template by themselves, and add the required live broadcast component in the live broadcast template, so that the flexibility of using the live broadcast template can be improved. In addition, whether a target live broadcast component which can be arbitrarily added in a live broadcast template by an anchor or live broadcast room operator is matched with the type of the live broadcast content can be detected by adopting the method and the device. If not, a first prompt message is sent out. In this way, conflicts between any added target live components and other display content can be avoided.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and together with the description, serve to explain the principles of the disclosure. In the drawings:
FIG. 1 is a flow diagram illustrating a method of directing configuration of a live template in accordance with an exemplary embodiment;
FIG. 2 is a diagram illustrating a live display interface in accordance with an exemplary embodiment;
FIG. 3 is a block diagram illustrating an apparatus for directing the configuration of a live template in accordance with an exemplary embodiment;
fig. 4 is a schematic diagram illustrating a structure of a terminal according to an exemplary embodiment.
With the foregoing drawings in mind, certain embodiments of the disclosure have been shown and described in more detail below. These drawings and written description are not intended to limit the scope of the disclosed concepts in any way, but rather to illustrate the concepts of the disclosure to those skilled in the art by reference to specific embodiments.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the exemplary embodiments below are not intended to represent all implementations consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.
The embodiment of the disclosure provides a method for guiding configuration of a live template, which can be realized by a terminal and can be realized by cooperation of a server. The terminal can be a mobile phone, a tablet computer, a desktop computer, a notebook computer and the like.
The terminal may include a processor, memory, etc. The processor, which may be a Central Processing Unit (CPU), may be configured to determine, according to a correspondence between a preset live broadcast content type and a live broadcast component configuration condition, a target live broadcast component configuration condition corresponding to a live broadcast content type in a target live broadcast room, and perform other Processing. The Memory may be a RAM (Random Access Memory), a Flash (Flash Memory), or the like, and may be configured to store received data, data required by the processing procedure, data generated in the processing procedure, or the like, such as a correspondence between a live content type and a live component configuration condition.
The terminal may also include a transceiver, input components, display components, audio output components, and the like. And the transceiver can be used for data transmission with the server, and the transceiver can comprise a Bluetooth component, a WiFi (Wireless-Fidelity) component, an antenna, a matching circuit, a modem and the like. The input means may be a touch screen, keyboard, mouse, etc. The audio output component may be a speaker, headphones, or the like.
The terminal may have a system program and an application program installed therein. A user uses various applications based on his/her own different needs while using the terminal. The terminal can be provided with an application program with a live broadcast function.
An exemplary embodiment of the present disclosure provides a method for guiding configuration of a live template, and as shown in fig. 1, a processing flow of the method may include the following steps:
and step S110, when a configuration instruction of a live broadcast template used in the live broadcast process of the target live broadcast room is detected, displaying a plurality of live broadcast components.
In implementation, when the anchor wants to perform live broadcasting, the live broadcasting application program in the mobile phone can be opened first, and an option for starting live broadcasting is selected from the live broadcasting application program. And then the terminal detects the trigger operation of starting live broadcast and prompts the anchor broadcast whether to configure a live broadcast template by itself. If the anchor chooses to use the default live template, the step of configuring the live template may be skipped. And if the anchor selects to configure the live template, entering an interface for configuring the live template.
After entering the interface for configuring the live template, a plurality of live components can be displayed. The live components may be pre-stored locally or downloaded from a server. If the live components are downloaded from the server, the related information of the plurality of live components can be displayed only on the interface for configuring the live template. When the first terminal detects a selection instruction of an option of any live broadcast component, the running code of any live broadcast component is obtained from the server.
And step S120, determining the live content type of the target live broadcast room.
Wherein, live content type can include pronunciation live broadcast, video live broadcast etc. and the video live broadcast can include the live broadcast of singing, dancing live broadcast, talk show live broadcast, answer live broadcast, recreation live broadcast, outdoor live broadcast etc. again.
In an implementation, the type of live content being live may be selected before the anchor is live. As shown in fig. 2, live content types that can be live can be provided in a live display interface. For example, the anchor selects "voice live broadcast" therein, and the terminal may determine that the live content type of the target live broadcast room corresponding to the anchor account currently registered by the anchor is "voice live broadcast".
Step S130, determining a target live broadcast component configuration condition corresponding to the live broadcast content type of the target live broadcast room according to the corresponding relation between the preset live broadcast content type and the live broadcast component configuration condition.
In implementation, the corresponding relationship between the live content type and the live component configuration condition may be downloaded in advance in the terminal, or a message carrying the live content type of the target live broadcast room may be sent to the server, where the corresponding relationship between the live content type and the live component configuration condition is preset in the server. In the corresponding relation between the live content type and the live component configuration condition, the live component configuration conditions corresponding to different live content types are recorded. For example, if the type of the live content is voice live, the live component configures a condition that addition of a video component is prohibited. If the type of the live content is answer live, the live component is configured with the condition that addition of more than 1 gift component is forbidden. The gift class component may include, among other things, a virtual gift animation component, a send red envelope component, and the like. If the type of the live content is answer live, a virtual gift animation component is added in a live template, and a red packet sending component cannot be added. Otherwise, the answer sheet is blocked due to the excessive number of the gift components.
Step S140, when a selection instruction of the target live broadcast component is detected, if the target live broadcast component does not meet the configuration condition of the target live broadcast component, a first prompt message is sent.
The first prompt message is used for indicating that the type of the live content of the target live broadcast component is not matched with that of the live broadcast of the target live broadcast room.
When the triggering operation of adding the target live broadcast component in the live broadcast template corresponding to the target live broadcast room is detected in the terminal, whether the anchor account currently logged in by the terminal is the anchor account of the preset type or not can be detected locally or through the server. Alternatively, the preset type of anchor account may be an anchor account for which a member is opened. The function of configuring the live template can be started for the anchor account opened by the member. The member's anchor account is not opened and only a default live template can be used. And if the anchor account currently logged in by the terminal is an anchor account of a preset type, prompting whether the anchor needs to configure a live broadcast template by itself.
And if the anchor selects an option for configuring the live broadcast template, entering an interface for configuring the live broadcast template, and displaying a plurality of live broadcast components in the interface for configuring the live broadcast template. The live components may be pre-stored locally or downloaded from a server. If the live components are downloaded from the server, the related information of the plurality of live components can be displayed only on the interface for configuring the live template. When the first terminal detects a selection instruction of an option of any live broadcast component, the running code of any live broadcast component is obtained from the server.
Some function points related to the live broadcast room can be abstracted into a relatively independent live broadcast component (the requirement of live broadcast service of the live broadcast application program can be a combination of abstracting the live broadcast room into the live broadcast components, and the service requirement of the live broadcast application program can be refined by taking the live broadcast components as granularity). The high cohesion in the live subassembly, the low coupling between the live subassembly can be guaranteed in the in-process of the live subassembly of design. Different live components are not strongly associated, the abstracted live components can be packaged and uniformly stored in a live component library.
The live broadcast components can comprise different types of live broadcast components, such as a video component, a public screen component, a speaking component, a gift component, a data card component, a praise component, a bullet screen component, an attention component, a revenue entrance stream component, a big gift special effect component, a stream light component and the like. These live components can be categorized by the dimensions of whether revenue is generated as a dimension, the scene used, the frequency of use, etc. For example, the division is performed according to the dimension of whether revenue is generated: the collection component can comprise a gift component, a collection entrance running water component, a big gift special effect component, a running light component and the like; the non-revenue components may include video components, public screen components, speech components, barrage components, and the like. Dividing according to the used scenes: the activity component may include an activity bar, etc.; the play components may include a cheerful bucket component, a disappearing music component, and the like. The division is performed according to the frequency used: the base component may include a video component, a public screen component, a talk component, etc.; non-base components may include a likes component, a barracks component, a gifts component, and the like.
And if the type of the live content is voice live, configuring the live component with the condition of forbidding adding the video component. And if the triggering operation of adding the video component in the live broadcast template corresponding to the target live broadcast room is detected, sending out first prompt information. The first cue information is used to indicate that the video component does not match an upcoming live audio broadcast of the target live broadcast room.
Optionally, the method provided by the embodiment of the present disclosure may further include: and if the target live broadcast assembly meets the configuration condition of the target live broadcast assembly and the associated live broadcast assembly associated with the target live broadcast assembly is found in a pre-stored list of associated live broadcast assemblies, sending second prompt information, wherein the second prompt information is used for prompting that the associated live broadcast assembly is added into the live broadcast template.
In implementation, for a target live component with an associated live component, if the target live component is used, the associated live component must be used at the same time, otherwise the live application may not operate properly. For example, the target live component is a barrage component for displaying speech information posted by viewers paying virtual money on the video image of the anchor. The associated live component is a speaking component for collecting speaking information of the audience. The comment information in the bullet screen component is derived from the comment component, and therefore, the comment component must be used simultaneously if the bullet screen component is used.
Optionally, the method provided by the embodiment of the present disclosure may further include: if the target live broadcast component meets the configuration condition of the target live broadcast component, determining a target placement position condition corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the placement position condition; and sending third prompt information, wherein the third prompt information is used for prompting that the target live broadcast component is added to a position, which meets the target placement position condition, in the live broadcast template.
In implementation, the placement of some live components in the display interface of the live application is not limited, and for example, the sticker component can be placed at an arbitrary position. However, for other live components, there are certain restrictions on their placement. For example, for a public screen assembly, it needs to be placed in a lower position in the display interface, otherwise most of the video image of the anchor is blocked.
In addition, the size of the target live broadcast component matched with the size of the current terminal screen can be determined according to the corresponding relation between the size of the terminal screen and the size of the live broadcast component stored in advance. And setting the size of the target live broadcast component to be matched with the size of the current terminal screen.
Optionally, whether all live components overlap or not may also be detected, if so, whether the component that overlaps is a preset component that can overlap or not is detected, and if not, the live components of the anchor are prompted to overlap, so that a display conflict situation may occur.
Optionally, the method provided by the embodiment of the present disclosure may further include: if the target live broadcast component meets the configuration condition of the target live broadcast component, determining a target display hierarchy corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the display hierarchy; and sending fourth prompt information, wherein the fourth prompt information is used for prompting that the display hierarchy of the target live broadcast component in the display interface is set as the target display hierarchy.
In implementation, for some live components, the display hierarchy of the live components in the display interface in the live application is limited, for example, the video component is displayed in a full screen and needs to be placed at a lower layer of the display interface, so that the speaking information and the like can be additionally displayed at a middle layer or an upper layer of the display interface. Furthermore, when the audience can watch the video image of the main broadcast, the audience can not influence the viewing of the speech information in the public screen.
Optionally, the method provided by the embodiment of the present disclosure may further include: if the target live broadcast component meets the configuration condition of the target live broadcast component, determining the component type of the live broadcast component added in the live broadcast template; and if the component type of the target live component is consistent with the component type of the added live component, sending fifth prompt information, wherein the fifth prompt information is used for prompting to replace the target live component.
In implementation, for the same type of live components, only one is placed for normal use. If redundant live broadcast components of the same type are placed, display resources and operation resources of the terminal can be wasted.
By the method provided by the embodiment of the disclosure, operators of the anchor or the live broadcast room can configure the live broadcast template by themselves, and add the required live broadcast component in the live broadcast template, so that the flexibility of using the live broadcast template can be improved. In addition, whether a target live broadcast component which can be arbitrarily added in a live broadcast template by an anchor or live broadcast room operator is matched with the type of the live broadcast content can be detected by adopting the method and the device. If not, a first prompt message is sent out. In this way, conflicts between any added target live components and other display content can be avoided.
Yet another exemplary embodiment of the present disclosure provides an apparatus for guiding configuration of a live template, as shown in fig. 3, the apparatus including:
a display module 310, configured to display a plurality of live components when a configuration instruction for a live template used in a live process of a target live room is detected
A first determining module 320, configured to determine a live content type of the target live broadcast room;
a second determining module 330, configured to determine, according to a preset correspondence between a live content type and a live component configuration condition, a target live component configuration condition corresponding to a live content type of the target live broadcast room;
the first prompt module 340 is configured to, when a selection instruction for a target live component is detected, send first prompt information if the target live component does not satisfy the target live component configuration condition, where the first prompt information is used to indicate that the target live component is not matched with a live content type of the target live broadcast room.
Optionally, the apparatus further comprises:
and the second prompting module is used for sending second prompting information when the target live broadcast assembly meets the configuration condition of the target live broadcast assembly and the associated live broadcast assembly associated with the target live broadcast assembly is found in a pre-stored list of associated live broadcast assemblies, wherein the second prompting information is used for prompting that the associated live broadcast assembly is added into the live broadcast template.
Optionally, the apparatus further comprises:
the third determining module is used for determining a target placement position condition corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the placement position condition when the target live broadcast component meets the target live broadcast component configuration condition;
and the third prompt information is used for prompting that the target live broadcast assembly is added to a position, meeting the target placement position condition, in the live broadcast template.
Optionally, the apparatus further comprises:
the fourth determining module is used for determining a target display hierarchy corresponding to the target live broadcast component according to the pre-stored corresponding relation between the live broadcast component and the display hierarchy when the target live broadcast component meets the configuration condition of the target live broadcast component;
and the fourth prompt module is used for sending fourth prompt information, wherein the fourth prompt information is used for prompting that the display hierarchy of the target live broadcast component in a display interface is set as the target display hierarchy.
Optionally, the apparatus further comprises:
a fifth determining module, configured to determine, when the target live component meets the target live component configuration condition, a component type of a live component that has been added to the live template;
and the fifth prompt module is used for sending fifth prompt information when the component type of the target live component is consistent with the component type of the added live component, wherein the fifth prompt information is used for prompting the target live component to be replaced.
With regard to the apparatus in the above-described embodiment, the specific manner in which each module performs the operation has been described in detail in the embodiment related to the method, and will not be elaborated here.
Through the device that this disclosed embodiment provided, can be so that anchor or live room operator can oneself dispose live broadcast template, add required live broadcast subassembly in live broadcast template, and then can improve the flexibility of using live broadcast template. In addition, whether a target live broadcast component which can be arbitrarily added in a live broadcast template by an anchor or live broadcast room operator is matched with the type of the live broadcast content can be detected by adopting the method and the device. If not, a first prompt message is sent out. In this way, conflicts between any added target live components and other display content can be avoided.
It should be noted that: in the device for guiding configuration of a live template provided in the foregoing embodiment, when a live template is set, only the division of each function module is used for illustration, and in practical applications, the function distribution may be completed by different function modules as needed, that is, an internal structure of a terminal or a server is divided into different function modules, so as to complete all or part of the functions described above. In addition, the apparatus for guiding configuration of a live broadcast template and the method embodiment for guiding configuration of a live broadcast template provided by the above embodiments belong to the same concept, and specific implementation processes thereof are detailed in the method embodiments and are not described herein again.
Fig. 4 shows a schematic structural diagram of a terminal 1800 according to an exemplary embodiment of the present disclosure. The terminal 1800 may be: a smart phone, a tablet computer, an MP3 player (Moving Picture Experts Group Audio Layer III, motion video Experts compression standard Audio Layer 3), an MP4 player (Moving Picture Experts Group Audio Layer IV, motion video Experts compression standard Audio Layer 4), a notebook computer, or a desktop computer. The terminal 1800 may also be referred to by other names such as user equipment, portable terminal, laptop terminal, desktop terminal, and the like.
Generally, the terminal 1800 includes: a processor 1801 and a memory 1802.
The processor 1801 may include one or more processing cores, such as a 4-core processor, an 8-core processor, and so on. The processor 1801 may be implemented in at least one hardware form of a DSP (Digital Signal Processing), an FPGA (Field-Programmable Gate Array), and a PLA (Programmable Logic Array). The processor 1801 may also include a main processor and a coprocessor, where the main processor is a processor for Processing data in an awake state, and is also called a Central Processing Unit (CPU); a coprocessor is a low power processor for processing data in a standby state. In some embodiments, the processor 1801 may be integrated with a GPU (Graphics Processing Unit), which is responsible for rendering and drawing content required to be displayed on the display screen. In some embodiments, the processor 1801 may further include an AI (Artificial Intelligence) processor for processing computing operations related to machine learning.
Memory 1802 may include one or more computer-readable storage media, which may be non-transitory. Memory 1802 may also include high speed random access memory, as well as non-volatile memory, such as one or more magnetic disk storage devices, flash memory storage devices. In some embodiments, a non-transitory computer readable storage medium in memory 1802 is used to store at least one instruction for execution by processor 1801 to implement a method of directing the configuration of live templates as provided by method embodiments herein.
In some embodiments, the terminal 1800 may further optionally include: a peripheral interface 1803 and at least one peripheral. The processor 1801, memory 1802, and peripheral interface 1803 may be connected by a bus or signal line. Each peripheral device may be connected to the peripheral device interface 1803 by a bus, signal line, or circuit board. Specifically, the peripheral device includes: at least one of radio frequency circuitry 1804, touch screen display 1805, camera 1806, audio circuitry 1807, positioning components 1808, and power supply 1809.
The peripheral interface 1803 may be used to connect at least one peripheral associated with I/O (Input/Output) to the processor 1801 and the memory 1802. In some embodiments, the processor 1801, memory 1802, and peripheral interface 1803 are integrated on the same chip or circuit board; in some other embodiments, any one or two of the processor 1801, the memory 1802, and the peripheral device interface 1803 may be implemented on separate chips or circuit boards, which is not limited in this embodiment.
The Radio Frequency circuit 1804 is used for receiving and transmitting RF (Radio Frequency) signals, also called electromagnetic signals. The radio frequency circuitry 1804 communicates with communication networks and other communication devices via electromagnetic signals. The rf circuit 1804 converts electrical signals into electromagnetic signals for transmission, or converts received electromagnetic signals into electrical signals. Optionally, the radio frequency circuitry 1804 includes: an antenna system, an RF transceiver, one or more amplifiers, a tuner, an oscillator, a digital signal processor, a codec chipset, a subscriber identity module card, and so forth. The radio frequency circuitry 1804 may communicate with other terminals via at least one wireless communication protocol. The wireless communication protocols include, but are not limited to: the world wide web, metropolitan area networks, intranets, generations of mobile communication networks (2G, 3G, 4G, and 5G), Wireless local area networks, and/or WiFi (Wireless Fidelity) networks. In some embodiments, the rf circuit 1804 may also include NFC (Near Field Communication) related circuits, which are not limited in this application.
The display screen 1805 is used to display a UI (User Interface). The UI may include graphics, text, icons, video, and any combination thereof. When the display screen 1805 is a touch display screen, the display screen 1805 also has the ability to capture touch signals on or over the surface of the display screen 1805. The touch signal may be input to the processor 1801 as a control signal for processing. At this point, the display 1805 may also be used to provide virtual buttons and/or a virtual keyboard, also referred to as soft buttons and/or a soft keyboard. In some embodiments, the display 1805 may be one, providing a front panel of the terminal 1800; in other embodiments, the number of the display screens 1805 may be at least two, and each of the display screens is disposed on a different surface of the terminal 1800 or is in a foldable design; in still other embodiments, the display 1805 may be a flexible display disposed on a curved surface or on a folded surface of the terminal 1800. Even more, the display 1805 may be arranged in a non-rectangular irregular figure, i.e. a shaped screen. The Display 1805 may be made of LCD (Liquid Crystal Display), OLED (Organic Light-Emitting Diode), or the like.
The camera assembly 1806 is used to capture images or video. Optionally, the camera assembly 1806 includes a front camera and a rear camera. Generally, a front camera is disposed at a front panel of the terminal, and a rear camera is disposed at a rear surface of the terminal. In some embodiments, the number of the rear cameras is at least two, and each rear camera is any one of a main camera, a depth-of-field camera, a wide-angle camera and a telephoto camera, so that the main camera and the depth-of-field camera are fused to realize a background blurring function, and the main camera and the wide-angle camera are fused to realize panoramic shooting and VR (Virtual Reality) shooting functions or other fusion shooting functions. In some embodiments, camera assembly 1806 may also include a flash. The flash lamp can be a monochrome temperature flash lamp or a bicolor temperature flash lamp. The double-color-temperature flash lamp is a combination of a warm-light flash lamp and a cold-light flash lamp, and can be used for light compensation at different color temperatures.
The audio circuitry 1807 may include a microphone and a speaker. The microphone is used for collecting sound waves of a user and the environment, converting the sound waves into electric signals, and inputting the electric signals to the processor 1801 for processing or inputting the electric signals to the radio frequency circuit 1804 to achieve voice communication. The microphones may be provided in a plurality, respectively, at different positions of the terminal 1800 for the purpose of stereo sound collection or noise reduction. The microphone may also be an array microphone or an omni-directional pick-up microphone. The speaker is used to convert electrical signals from the processor 1801 or the radio frequency circuitry 1804 to sound waves. The loudspeaker can be a traditional film loudspeaker or a piezoelectric ceramic loudspeaker. When the speaker is a piezoelectric ceramic speaker, the speaker can be used for purposes such as converting an electric signal into a sound wave audible to a human being, or converting an electric signal into a sound wave inaudible to a human being to measure a distance. In some embodiments, audio circuitry 1807 may also include a headphone jack.
The positioning component 1808 is utilized to locate a current geographic position of the terminal 1800 for navigation or LBS (Location Based Service). The Positioning component 1808 may be a Positioning component based on a Global Positioning System (GPS) in the united states, a beidou System in china, or a galileo System in russia.
The power supply 1809 is used to power various components within the terminal 1800. The power supply 1809 may be ac, dc, disposable or rechargeable. When the power supply 1809 includes a rechargeable battery, the rechargeable battery may be a wired rechargeable battery or a wireless rechargeable battery. The wired rechargeable battery is a battery charged through a wired line, and the wireless rechargeable battery is a battery charged through a wireless coil. The rechargeable battery may also be used to support fast charge technology.
In some embodiments, the terminal 1800 also includes one or more sensors 1810. The one or more sensors 1810 include, but are not limited to: acceleration sensor 1811, gyro sensor 1812, pressure sensor 1813, fingerprint sensor 1814, optical sensor 1815, and proximity sensor 1816.
The acceleration sensor 1811 may detect the magnitude of acceleration on three coordinate axes of a coordinate system established with the terminal 1800. For example, the acceleration sensor 1811 may be used to detect components of gravitational acceleration in three coordinate axes. The processor 1801 may control the touch display 1805 to display the user interface in a landscape view or a portrait view according to the gravitational acceleration signal collected by the acceleration sensor 1811. The acceleration sensor 1811 may also be used for acquisition of motion data of a game or a user.
The gyro sensor 1812 may detect a body direction and a rotation angle of the terminal 1800, and the gyro sensor 1812 may cooperate with the acceleration sensor 1811 to collect a 3D motion of the user on the terminal 1800. The processor 1801 may implement the following functions according to the data collected by the gyro sensor 1812: motion sensing (such as changing the UI according to a user's tilting operation), image stabilization at the time of photographing, game control, and inertial navigation.
The pressure sensors 1813 may be disposed on a side bezel of the terminal 1800 and/or on a lower layer of the touch display 1805. When the pressure sensor 1813 is disposed on a side frame of the terminal 1800, a user's grip signal on the terminal 1800 can be detected, and the processor 1801 performs left-right hand recognition or shortcut operation according to the grip signal collected by the pressure sensor 1813. When the pressure sensor 1813 is disposed at the lower layer of the touch display screen 1805, the processor 1801 controls the operability control on the UI interface according to the pressure operation of the user on the touch display screen 1805. The operability control comprises at least one of a button control, a scroll bar control, an icon control and a menu control.
The fingerprint sensor 1814 is used to collect the fingerprint of the user, and the processor 1801 identifies the user according to the fingerprint collected by the fingerprint sensor 1814, or the fingerprint sensor 1814 identifies the user according to the collected fingerprint. Upon recognizing that the user's identity is a trusted identity, the processor 1801 authorizes the user to perform relevant sensitive operations, including unlocking a screen, viewing encrypted information, downloading software, paying, and changing settings, etc. The fingerprint sensor 1814 may be disposed on the front, back, or side of the terminal 1800. When a physical key or vendor Logo is provided on the terminal 1800, the fingerprint sensor 1814 may be integrated with the physical key or vendor Logo.
The optical sensor 1815 is used to collect the ambient light intensity. In one embodiment, the processor 1801 may control the display brightness of the touch display 1805 based on the ambient light intensity collected by the optical sensor 1815. Specifically, when the ambient light intensity is high, the display brightness of the touch display screen 1805 is increased; when the ambient light intensity is low, the display brightness of the touch display 1805 is turned down. In another embodiment, the processor 1801 may also dynamically adjust the shooting parameters of the camera assembly 1806 according to the intensity of the ambient light collected by the optical sensor 1815.
A proximity sensor 1816, also known as a distance sensor, is typically provided on the front panel of the terminal 1800. The proximity sensor 1816 is used to collect the distance between the user and the front surface of the terminal 1800. In one embodiment, when the proximity sensor 1816 detects that the distance between the user and the front surface of the terminal 1800 gradually decreases, the processor 1801 controls the touch display 1805 to switch from the bright screen state to the dark screen state; when the proximity sensor 1816 detects that the distance between the user and the front surface of the terminal 1800 becomes gradually larger, the processor 1801 controls the touch display 1805 to switch from the breath screen state to the bright screen state.
Those skilled in the art will appreciate that the configuration shown in fig. 4 is not intended to be limiting of terminal 1800 and may include more or fewer components than those shown, or some components may be combined, or a different arrangement of components may be used.
Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure disclosed herein. This application is intended to cover any variations, uses, or adaptations of the disclosure following, in general, the principles of the disclosure and including such departures from the present disclosure as come within known or customary practice within the art to which the disclosure pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the disclosure being indicated by the following claims.
It will be understood that the present disclosure is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims (8)

1. A method of directing configuration of a live template, the method comprising:
when a configuration instruction of a live broadcast template used in a live broadcast process of a target live broadcast room is detected, displaying a plurality of live broadcast components;
determining the type of live content of the target live broadcast room;
determining a target live broadcast component configuration condition corresponding to the live broadcast content type of the target live broadcast room according to a preset corresponding relation between the live broadcast content type and the live broadcast component configuration condition;
when a selection instruction of a target live broadcast component is detected, if the target live broadcast component does not meet the configuration condition of the target live broadcast component, sending first prompt information, wherein the first prompt information is used for indicating that the type of live broadcast content of the target live broadcast component is not matched with that of live broadcast content of a target live broadcast room;
if the target live broadcast component meets the configuration condition of the target live broadcast component, determining a target placement position condition corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the placement position condition; sending third prompt information, wherein the third prompt information is used for prompting that the target live broadcast assembly is added to a position, meeting the target placement position condition, in the live broadcast template;
the method further comprises the following steps:
detecting whether the target live broadcast components are overlapped, and if the target live broadcast components are overlapped, detecting whether the overlapped target live broadcast components are preset live broadcast components capable of being overlapped; and if the overlapped target live broadcast component is determined not to be the preset live broadcast component capable of being overlapped, prompting the anchor to overlap the target live broadcast component.
2. The method of claim 1, further comprising:
and if the target live broadcast assembly meets the configuration condition of the target live broadcast assembly and the associated live broadcast assembly associated with the target live broadcast assembly is found in a pre-stored list of associated live broadcast assemblies, sending second prompt information, wherein the second prompt information is used for prompting that the associated live broadcast assembly is added into the live broadcast template.
3. The method of claim 1, further comprising:
if the target live broadcast component meets the configuration condition of the target live broadcast component, determining a target display hierarchy corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the display hierarchy;
and sending fourth prompt information, wherein the fourth prompt information is used for prompting that the display hierarchy of the target live broadcast component in a display interface is set as the target display hierarchy.
4. The method of claim 1, further comprising:
if the target live broadcast component meets the target live broadcast component configuration condition, determining the component type of the live broadcast component added in the live broadcast template;
and if the component type of the target live component is consistent with the component type of the added live component, sending fifth prompt information, wherein the fifth prompt information is used for prompting to replace the target live component.
5. An apparatus for directing configuration of a live template, the apparatus comprising:
the display module is used for displaying a plurality of live broadcast components when a configuration instruction of a live broadcast template used in a live broadcast process of a target live broadcast room is detected;
the first determining module is used for determining the type of the live content of the target live broadcast room;
the second determining module is used for determining a target live broadcast component configuration condition corresponding to the live broadcast content type of the target live broadcast room according to the corresponding relation between the preset live broadcast content type and the live broadcast component configuration condition;
the live broadcast control device comprises a first prompt module and a second prompt module, wherein the first prompt module is used for sending first prompt information if a target live broadcast component does not meet the configuration condition of the target live broadcast component when a selection instruction of the target live broadcast component is detected, and the first prompt information is used for indicating that the type of live broadcast contents of the target live broadcast component and the target live broadcast room is not matched;
the third determining module is used for determining a target placement position condition corresponding to the target live broadcast component according to a pre-stored corresponding relation between the live broadcast component and the placement position condition when the target live broadcast component meets the target live broadcast component configuration condition;
the third prompt module is used for sending third prompt information, wherein the third prompt information is used for prompting that the target live broadcast assembly is added to a position, meeting the target placement position condition, in the live broadcast template;
the apparatus also includes means for:
detecting whether the target live broadcast components are overlapped, and if the target live broadcast components are overlapped, detecting whether the overlapped target live broadcast components are preset live broadcast components capable of being overlapped; and if the overlapped target live broadcast component is determined not to be the preset live broadcast component capable of being overlapped, prompting the anchor to overlap the target live broadcast component.
6. The apparatus of claim 5, further comprising:
and the second prompting module is used for sending second prompting information when the target live broadcast assembly meets the configuration condition of the target live broadcast assembly and the associated live broadcast assembly associated with the target live broadcast assembly is found in a pre-stored list of associated live broadcast assemblies, wherein the second prompting information is used for prompting that the associated live broadcast assembly is added into the live broadcast template.
7. A terminal, characterized in that the terminal comprises a processor, a communication interface, a memory and a communication bus, wherein:
the processor, the communication interface and the memory complete mutual communication through the communication bus;
the memory is used for storing a computer program;
the processor is configured to execute the program stored in the memory to implement the method steps of any of claims 1-4.
8. A computer-readable storage medium, characterized in that a computer program is stored in the computer-readable storage medium, which computer program, when being executed by a processor, carries out the method steps of any one of claims 1 to 4.
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